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A Terrestrial Single Chamber Microbial Fuel Cell-based Biosensor for Biochemical Oxygen Demand of Synthetic Rice Washed Wastewater

机译:一种基于陆地单室微生物燃料电池的生物传感器,用于合成稻谷洗涤废水的生化需氧量

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Microbial fuel cells represent an innovative technology which allow simultaneous waste treatment, electricity production, and environmental monitoring. This study provides a preliminary investigation of the use of terrestrial Single chamber Microbial Fuel Cells (SMFCs) as biosensors. Three cells were created using Andean soil, each one for monitoring a BOD concentration of synthetic washed rice wastewater (SRWW) of 10, 100, and 200 mg/L for SMFC1, SMFC2 and SMFC3, respectively. The results showed transient, exponential, and steady stages in the SMFCs. The maximum open circuit voltage (OCV) peaks were reached during the elapsed time of the transient stages, according to the tested BOD concentrations. A good linearity between OCV and time was observed in the increasing stage. The average OCV in this stage increased independently of the tested concentrations. SMFC1 required less time than SMFC2 to reach the steady stage, suggesting the BOD concentration is an influencing factor in SMFCs, and SMFC3 did not reach it. The OCV ratios were between 40.6–58.8 mV and 18.2–32.9 mV for SMFC1 and SMFC2. The reproducibility of the SMFCs was observed in four and three cycles for SMFC1 and SMFC2, respectively. The presented SMFCs had a good response and reproducibility as biosensor devices, and could be an alternative for environmental monitoring.
机译:微生物燃料电池代表了一项创新技术,可同时进行废物处理,发电和环境监测。这项研究提供了使用地面单室微生物燃料电池(SMFCs)作为生物传感器的初步调查。使用Andean土壤创建了三个单元,每个单元用于监测SMFC1,SMFC2和SMFC3的合成洗米废水(SRWW)的BOD浓度分别为10、100和200 mg / L。结果显示了SMFC中的过渡,指数和稳定阶段。根据测试的BOD浓度,在瞬态阶段的经过时间内达到了最大开路电压(OCV)峰值。在增加阶段,OCV和时间之间具有良好的线性关系。该阶段的平均OCV随测试浓度的增加而增加。 SMFC1所需的时间少于SMFC2达到稳定阶段的时间,这表明BOD浓度是SMFC中的影响因素,而SMFC3并未达到此水平。 SMFC1和SMFC2的OCV比在40.6-58.8 mV和18.2-32.9 mV之间。 SMFC1和SMFC2分别在四个和三个循环中观察到了SMFC的再现性。所提出的SMFC作为生物传感器设备具有良好的响应性和可重复性,并且可以替代环境监测。

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